DoctorateOpen Access

High frequency vibrations of thin plates

2008
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Advisor: Prof. Dr. A. Saide Sarıgül

Abstract (EN)

In the analysis of high frequency dynamics of vibrating systems, an averaged prediction of energy is generally of interest to describe the response level. However, energetic response parameters do not include modal information and thus exhibit smooth characteristics. Therefore, it is obvious for systems subjected to high frequency excitations that an efficient tool is required. This doctorate study mainly deals with the development of such an approach.In this regard, a novel scheme for the discrete high frequency response analysis was introduced in the presented thesis. The scheme is based on Discrete Singular Convolution (DSC) and Mode Superposition (MS) methods. The accuracy of the DSC-MS is validated for thin beams and plates by comparing with available analytical solutions. The performance of the DSC-MS was evaluated by predicting spatial distribution and discrete frequency spectra of the vibration response of thin plates with two different boundary conditions.As a secondary study, this thesis introduced two different application procedures for classical DSC method. The first one is an algorithm for free vibration analysis of symmetrically laminated composite plates. The second one is an implementation for free vibrations of thick beams and plates. Comprehensive comparisons with open literature state that both procedures presented for the DSC are rather effective and accurate.

Author

Dr. Abdullah Seçgin

How to Cite

Abdullah Seçgin (Doctorate thesis). High frequency vibrations of thin plates, 2008, Dokuz Eylül University, Makine Mühendisliği Bölümü.

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